清脆的
反式激活crRNA
多路复用
基因组编辑
药物发现
计算生物学
基因
生物
遗传学
生物信息学
作者
Christoph Bock,Paul Datlinger,Florence M. Chardon,Matthew A. Coelho,Matthew B. Dong,Keith A. Lawson,Tian Lu,Laetitia Maroc,Thomas M. Norman,Bicna Song,Geoff Stanley,Sidi Chen,Mathew J. Garnett,Wei Li,Jason Moffat,Lei S. Qi,Rebecca S. Shapiro,Jay Shendure,Jonathan S. Weissman,Xiaowei Zhuang
标识
DOI:10.1038/s43586-022-00098-7
摘要
CRISPR screens are a powerful source of biological discovery, enabling the unbiased interrogation of gene function in a wide range of applications and species. In pooled CRISPR screens, various genetically encoded perturbations are introduced into pools of cells. The targeted cells proliferate under a biological challenge such as cell competition, drug treatment or viral infection. Subsequently, the perturbation-induced effects are evaluated by sequencing-based counting of the guide RNAs that specify each perturbation. The typical results of such screens are ranked lists of genes that confer sensitivity or resistance to the biological challenge of interest. Contributing to the broad utility of CRISPR screens, adaptations of the core CRISPR technology make it possible to activate, silence or otherwise manipulate the target genes. Moreover, high-content read-outs such as single-cell RNA sequencing and spatial imaging help characterize screened cells with unprecedented detail. Dedicated software tools facilitate bioinformatic analysis and enhance reproducibility. CRISPR screening has unravelled various molecular mechanisms in basic biology, medical genetics, cancer research, immunology, infectious diseases, microbiology and other fields. This Primer describes the basic and advanced concepts of CRISPR screening and its application as a flexible and reliable method for biological discovery, biomedical research and drug development - with a special emphasis on high-content methods that make it possible to obtain detailed biological insights directly as part of the screen.
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